1.Epidemiological characteristics and ARIMA model-based prediction of pulmonary tuberculosis and diabetes mellitus comorbidity in Wuhan in 2020–2024
Tiantian WANG ; Zefang ZHANG ; Haozhe ZHANG ; Xiaojun WANG ; Yuehua LI ; Yan ZHOU ; Jun WU ; Gang WU
Journal of Public Health and Preventive Medicine 2026;37(5):36-40
Objective To investigate the registration rate and trend of pulmonary tuberculosis complicated with diabetes mellitus (PTB-DM) in Wuhan from 2020 to 2024, and to provide scientific evidence for formulating PTB-DM prevention and control policies. Methods PTB-DM case data in Wuhan (2020-2024) were collected through the Infectious Disease Registration and Management Information System. Joinpoint regression model was employed to analyze the trend of registration rates of PTB-DM among the general population and across different regions, genders, and age groups. ARIMA model was used to predict the short-term prevalence of PTB-DM. Results Among 26275 pulmonary tuberculosis cases registered in Wuhan (2020-2024), 2669 cases (10.16%) were PTB-DM. The average annual registration rate of PTB-DM was 3.96/100,000, increasing from 2.74/100,000 in 2020 to 5.40/100,000 in 2024 (APC=19.07%, 95% CI:12.99%-26.92%, P<0.001). The PTB-DM registration rates showed an upward trend across different regions, genders, and age groups in Wuhan, with higher registration rates observed in near urban area, males, and individuals aged 60~64 and 65 years and above (χ2=99.566, P<0.001; χ2=781.891, P<0.001; χ2=2211.930, P<0.001). ARIMA model predicted that the prevalence of PTB-DM in Wuhan would remain stable and fluctuating in the short time. Conclusion PTB-DM registration rate in Wuhan increases from 2020 to 2024. Near urban area, males, and elderly populations are high risk groups. Future efforts should focus on strengthening the prevention and control of PTB-DM among these populations.
2.Carbazole and tetrahydro-carboline derivatives as dopamine D3 receptor antagonists with the multiple antipsychotic-like properties.
Zhongtang LI ; Fan FANG ; Yiyan LI ; Xuehui LV ; Ruqiu ZHENG ; Peili JIAO ; Yuxi WANG ; Guiwang ZHU ; Zefang JIN ; Xiangqing XU ; Yinli QIU ; Guisen ZHANG ; Zhongjun LI ; Zhenming LIU ; Liangren ZHANG
Acta Pharmaceutica Sinica B 2023;13(11):4553-4577
Dopamine D3 receptor (D3R) is implicated in multiple psychotic symptoms. Increasing the D3R selectivity over dopamine D2 receptor (D2R) would facilitate the antipsychotic treatments. Herein, novel carbazole and tetrahydro-carboline derivatives were reported as D3R selective ligands. Through a structure-based virtual screen, ZLG-25 (D3R Ki = 685 nmol/L; D2R Ki > 10,000 nmol/L) was identified as a novel D3R selective bitopic ligand with a carbazole scaffold. Scaffolds hopping led to the discovery of novel D3R-selective analogs with tetrahydro-β-carboline or tetrahydro-γ-carboline core. Further functional studies showed that most derivatives acted as hD3R-selective antagonists. Several lead compounds could dose-dependently inhibit the MK-801-induced hyperactivity. Additional investigation revealed that 23j and 36b could decrease the apomorphine-induced climbing without cataleptic reaction. Furthermore, 36b demonstrated unusual antidepressant-like activity in the forced swimming tests and the tail suspension tests, and alleviated the MK-801-induced disruption of novel object recognition in mice. Additionally, preliminary studies confirmed the favorable PK/PD profiles, no weight gain and limited serum prolactin levels in mice. These results revealed that 36b provided potential opportunities to new antipsychotic drugs with the multiple antipsychotic-like properties.
3.Detection methods for polyethylene terephthalate degrading enzymes: a review.
Hanxiao ZHANG ; Yunjie XIAO ; Haitao YANG ; Zefang WANG
Chinese Journal of Biotechnology 2023;39(8):3219-3235
Polyethylene terephthalate (PET) is one of the most widely used synthetic polyester. It poses serious threat to terrestrial, aquatic ecosystems and human health since it is difficult to be broken down and deposited in the environment. The biodegradation based on enzymatic catalysis offers a sustainable method for recycling PET. A number of PET hydrolases have been discovered in the last 20 years, and protein engineering has increased their degradation capabilities. However, no PET hydrolases that are practical for widespread industrial use have been identified. Screening of PET hydrolase using conventional detection techniques is laborious and inefficient process. Effective detection techniques are required to promote the commercialization of PET hydrolases. Using efficient detection techniques to screen potent industrial enzymes is essential for supporting the widespread industrial implementation of PET hydrolases. To define PET hydrolase, scientists have created a number of analytical techniques recently. The detection techniques that can be used to screen PET hydrolase, including high performance liquid chromatography, ultraviolet absorption spectrometric, and fluorescence activated droplet sorting method, are summarized in this study along with their potential applications.
Humans
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Polyethylene Terephthalates
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Ecosystem
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Biodegradation, Environmental
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Catalysis
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Hydrolases
4.Molecularly engineered truncated tissue factor with therapeutic aptamers for tumor-targeted delivery and vascular infarction.
Bozhao LI ; Jingyan WEI ; Chunzhi DI ; Zefang LU ; Feilong QI ; Yinlong ZHANG ; Wei Sun LEONG ; Lele LI ; Guangjun NIE ; Suping LI
Acta Pharmaceutica Sinica B 2021;11(7):2059-2069
Selective occlusion of tumor vasculature has proven to be an effective strategy for cancer therapy. Among vascular coagulation agents, the extracellular domain of coagulation-inducing protein tissue factor, truncated tissue factor (tTF), is the most widely used. Since the truncated protein exhibits no coagulation activity and is rapidly cleared in the circulation, free tTF cannot be used for cancer treatment on its own but must be combined with other moieties. We here developed a novel, tumor-specific tTF delivery system through coupling tTF with the DNA aptamer, AS1411, which selectively binds to nucleolin receptors overexpressing on the surface of tumor vascular endothelial cells and is specifically cytotoxic to target cells. Systemic administration of the tTF-AS1411 conjugates into tumor-bearing animals induced intravascular thrombosis solely in tumors, thus reducing tumor blood supply and inducing tumor necrosis without apparent side effects. This conjugate represents a uniquely attractive candidate for the clinical translation of vessel occlusion agent for cancer therapy.
5.Protective effects of myocardium-targeted nanoparticles loaded L-arginineon on sepsis-induced myocardial injury
Zefang PENG ; Ming ZHANG ; Minzhi OUYANG ; Xiangnan OUYANG ; Ganqiong XU ; Jiawei ZHOU ; Meixiang ZHANG
Chinese Critical Care Medicine 2020;32(8):953-959
Objective:To prepare primary cardiomyocyte (PCM) specific peptide-conjugated mesoporous silicon nanoparticles (MSN) with L-arginine (LA) as a core (PCM-MSN@LA), and evaluate its specific protective effect on septic myocardium.Methods:PCM-MSN@LA was prepared by condensation reaction, the characterization of PCM-MSN@LA, the amount of LA modification and release was detected, and the phagocytosis of PCM-MSN@LA and its affinity to myocardial tissue was observed. ① Experiment one: SD neonatal rat cardiomyocytes were divided into control group (Con group), lipopolysaccharide (LPS) group, MSN@LA/LPS group and PCM-MSN@LA/LPS group. The LPS group was stimulated with 5 mg/L LPS for 16 hours, while the MSN@LA/LPS group and PCM-MSN@LA/LPS group were treated with 5 mg/L LPS and 25 mg/L LA-containing nanoparticles (MSN@LA and PCM-MSN@LA) for 16 hours. Cell viability and reactive oxygen species (ROS) production levels were detected. Apoptosis was observed via terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling method (TUNEL). Western Blot was used to detect the changes in endothelial nitric oxide synthase (eNOS) and inducible nitric oxide synthase (iNOS) proteins. ② Experiment two: 64 healthy male C57BL/6 mice were divided into Sham group, LPS group, MSN@LA/LPS group and PCM-MSN@LA/LPS group by random number table method, 16 mice in each group. LPS group were injected 50 mg/kg LPS intraperitoneally. MSN@LA/LPS group and PCM-MSN@LA/LPS group were injected with 0.5 mg/kg MSN@LA and PCM-MSN@LA via tail vein immediately after intraperitoneal injection of LPS. Eight animals in each group were used to observe the 24-hour survival rate, and the other 8 mice were used to detect cardiac function by echocardiography at 12 hours after operation; mRNA expressions of interleukin (IL-1, IL-6) and tumor necrosis factor-α (TNF-α) were measured by real-time fluorescent quantitative polymerase chain reaction (RT-qPCR).Results:PCM-MSN@LA was spherical, with particle size of about 180 nm, Zeta potential of about -21 mV, with LA loaded. The amount of LA modification and release rate were 12.3% and 24.3%, respectively. Cell phagocytosis experiments showed that PCM-MSN@LA had the targeting ability of cardiomyocytes and myocardial tissue. Experiment one: after LPS stimulation of myocardial cells, cell viability decreased, while ROS generation, apoptosis, eNOS and iNOS protein expressions increased. Compared with LPS group, MSN@LA/LPS group and PCM-MSN@LA/LPS group had higher cell viability, reduced ROS levels and apoptosis, increased expressions of eNOS and iNOS. PCM-MSN@LA/LPS group changed the above effect further than MSN@LA/LPS group [cell viability ( A value): 0.51±0.08 vs. 0.41±0.03, ROS (relative fluorescence intensity): 28 450±1 941 vs. 35 628±2 551, TUNEL positive cells/total cells: 0.27±0.03 vs. 0.35±0.04, eNOS/β-Tubulin: 1.467±0.046 vs. 1.201±0.131, iNOS/β-Tubulin: 1.700±0.033 vs. 1.577±0.068, all P < 0.05]. Experiment two: the number of 24-hour survive in MSN@LA/LPS group and PCM-MSN@ LA/LPS group were higher than LPS group (number: 2, 4 vs. 1, P values were 0.36 and 0.03 respectively). Compared with Sham group, the cardiac function of LPS group was significantly inhibited and the mRNA expression of inflammatory factors increased. The PCM-MSN@LA/LPS group had higher left ventricular ejection fraction (LVEF) and left ventricular short-axis shortening rate (LVFS) than LPS group, and lower mRNA expressions of IL-1, IL-6, and TNF-α mRNA [LVEF: 0.456±0.019 vs. 0.337±0.017, LVFS: (21.97±1.78)% vs. (15.53±1.67)%, IL-1 mRNA (2 -ΔΔCT): 169.22±8.95 vs. 189.79±6.79, IL-6 mRNA (2 -ΔΔCT): 19.90±1.60 vs. 23.74±1.45, TNF-α mRNA (2 -ΔΔCT): 8.21±0.81 vs. 11.00±1.48, all P < 0.05]. There was no significant difference in each index between the MSN@LA/LPS group and LPS group. Conclusion:PCM-MSN@LA with myocardial targeting characteristic significantly increased the activity of myocardial cells, down-regulated the expression of inflammatory factors and the production of ROS, alleviated cardiac insufficiency in sepsis, and achieved the targeted treatment of myocardial injury in sepsis.
6.Characteristics and prognosis of female breast cancer in Guangzhou, 2008-2017
Qianxin CHEN ; Yixin ZHANG ; Ke LI ; Hang DONG ; Huan XU ; Guozhen LIN ; Zefang REN
Chinese Journal of Epidemiology 2020;41(11):1831-1835
Objective:To describe the distributions of demographic and clinic pathological characteristics and relations with survival on female breast cancer patients in Guangzhou from 2008 to 2017.Methods:The baseline information of the subjects was obtained from the Guangzhou cancer registry and the outcomes were from the Cancer Follow-up System of Guangzhou. Kaplan-Meier was used to calculate the 1-, 3-, 5-year overall survival rates. Univariate and multivariate Cox proportional hazards regression models were used to identify the factors related to the overall survival.Results:Among the 12 465 breast cancer patients recruited in the study, the average age at diagnosis was 53.9 years old, with those aged 45 to 54 making up the largest proportion (43.9 %). Only 15.6 % of the patients had college or above degrees. Patients with normal BMI accounted for 78.2 %. Most of the patients (90.0 %) had received surgical treatment. Invasive ductal carcinoma appeared the most common histologic type, accounting for 82.3 %. Among the 2 640 patients diagnosed in the four large hospitals, clinical stages 0-Ⅰ, Ⅱ, Ⅲ and Ⅳ accounted for 35.0 %, 44.8 %, 17.2 % and 3.0 %, respectively. The proportions of ER-positive, PR-positive and HER-2 positive breast cancer were 79.5 %, 70.8 %, and 19.2 %, respectively. In terms of subtypes, Luminal B was the most common one, accounted for 53.3 %. The 1-, 3- and 5-year overall survival rates were 99.0 %, 95.3 % and 92.1 %, respectively. Results from the multivariate analysis indicated that factors as: age over 55 years old at diagnosis, advanced TNM stage, ER negative, PR negative, Luminal B subtype and triple-negative subtype were associated with poorer prognosis. Conclusions:Compared with the previous hospital-based studies in China, this population-based study revealed that the proportions of patients with advanced age, early clinical stage or ER positive breast cancer were relatively high and the overall survival rate for breast cancer was higher than that in the previous studies. Relationships between characteristics and prognosis of breast cancer were consistent with the previous findings.
7.Mechanisms underlying contraction of rat isolated coronary artery induced by acidosis
Zefang HE ; Xiaomin HOU ; Rong YANG ; Fangwen FAN ; Pengmei GUO ; Yu LIU ; Mingsheng ZHANG
Chinese Journal of Pathophysiology 2017;33(5):838-842
AIM:To explore the mechanisms underlying contraction induced by extracelluar acidosis (pHex6.8) in rat isolated coronary artery (RCA).METHODS:Using the microvessel tension recorder system, the effects of acid-base transporters on RCA contraction induced by pHex6.8 were explored by applying the selective pharmacological inhibitors of Na+-H+ exchanger 1 (NHE-1) and Na+-HCO-3 cotransporter (NBC), HOE-642 and S0859, respectively.The effects of chloride channel on RCA contraction induced by pHex6.8 were explored by applying the inhibitors of chloride channel (NPPB and NFA), and by replacing the extracellular NaCl with equimolar NaBr.RESULTS:pHex6.8 augmented the resting tension of RCA, and the maximum contraction was (3.90±0.95) mN.HOE-642 at 30 μmol/L and S0859 at 100 μmol/L both inhibited the contraction of RCA induced by pHex6.8 (P<0.01).NPPB and NFA both inhibited the contraction of RCA induced by pHex6.8 or KCl (60 mmol/L) in a concentration-dependent manner.NPPB and NFA (100 μmol/L) both inhibited the contraction of RCA induced by U46619 (1 μmol/L).Replacing the extracellular NaCl with equimolar NaBr almost completely inhibited RCA contraction induced by pHex6.8 (P<0.01), but had no obvious effect on the contraction induced by KCl (60 mmol/L) or U46619 (1 μmol/L).CONCLUSION:Extracellular acidosis-induced contraction in RCA may be related to the activated NHE-1 and NBC, and it may be also related to the enhanced chloride transport across the membrane.
8.Prokaryotic expression of human mitochondrial transcription termination factor 3 and preparation of its polyclonal antibody
Yongqin YANG ; Chenggui ZHANG ; Meitao SUN ; Yun WANG ; Zefang YANG ; Xiaojuan ZHANG ; Wei XIONG
Journal of Medical Postgraduates 2016;29(10):1020-1025
Objective Human mitochondrial transcription termination factor 3 ( MTERF3 ) is a negative regulator of mito?chondrial gene expression and energy metabolism. This study was to construct a prokaryotic expression system for MTERF3 in Esche?richia coli ( E. coli ) and prepare its mouse?anti?human polyclonal antibody. Methods The complete open reading frame ( ORF) of human MTERF3 cDNA was amplified by RT?PCR and subcloned into prokaryotic expression vector pET28b. Then the recombinant plasmid pET28b?MTERF3 was transformed into competent E.coli BL21(DE3) and IPTG induced the expression of 6×his fusion protein. The recom?binant human MTERF3 protein was purified through Ni2+?NTA agar?ose gel column affinity chromatography and the purified recombinant protein was used as immunogen to immunize the BALB/c mice to pre?pare its specific polyclonal antibody. The titer and specificity of the antibody were analyzed by ELISA, Western blot and cellular immuno?fluorescence, respectively. Results The recombinant human MTERF3 protein was successfully expressed in E. coil and the mouse?anti?human MTERF3 polyclonal antibody with high quality was successfully prepared. ELISA showed that the titer of the antibody was 1:105 . Western blot and immunofluorescence detection revealed that the mouse?anti?human MTERF3 antibody could recognize the native MTERF3 antigen specifically. Conclusion Human MTERF3 expressed in the prokaryotic system has strong immunogenicity and the polyclonal antibody obtained from immunizing mice has high titer and specificity. The prokaryotic expression of human MTERF3 and the preparation of its antibody lay the foundation for further function research of human MTERF3.
9.Vasodilatory effect of Ferulic acid on in-vitro rat coronary artery
Longmei FANG ; Xiaomin HOU ; Rong YANG ; Fangwen FAN ; Zefang HE ; Meng SHI ; Mingsheng ZHANG
Chinese Pharmacological Bulletin 2016;32(4):554-558
Aim To investigate the vasodilatory effect of Ferulic acid on in vitro rat coronary artery and its possible mechanism. Methods By using the mi-crovessel tension recorder system, the vasodilatory effect of FA on resting and contractin-vitro rat coronary artery was determined;the influence of endothelial in-tegrity to FA-induced vasorelaxation was observed; the relationship of FA on [ Ca2+] ex-influx-induced and [ Ca2+] in-efflux-induced contractions was discussed;the mechanism of vasodilatory effect of FA was ex-plored by applying the inhibitors of KCa(TEA),KATP channel ( Gli ) , KIR channel ( BaCl2 ) , KV ( 4-AP ) , NOS( L-NAME) and COX( Indo) . Results FA had no effect on the resting tension of in vitro rat coronary artery. FA dilated the in-vitro rat coronary artery pre-treated with KCl ( 60 mmol · L-1 ) , U46619 ( 1 μmol · L-1 ) and PE ( 10μmol · L-1 ) in a concentration-dependent fashion ( P < 0. 05 ) . FA inhibited the [ Ca2+] ex-influx-induced and [ Ca2+] in-efflux-in-duced contractions significantly ( P <0. 05 ) . 4-AP ( 1 mmol· L-1 ) restrained the diastolic function of FA, while TEA, Gli, BaCl2、L-NAME, Indo had no obvious effect ( P >0. 05 ) . Conclusion The diastolic func-tion could be related to the activation of KV channel on vascular smooth muscle cells, the free Ca2+ from Sar-coplasmic reticulum cells and blockade extracellular Calcium channel do not depend on KCa, KATP, KIR channel, nor the endothelial function.
10.Structural basis of Zika virus helicase in recognizing its substrates.
Hongliang TIAN ; Xiaoyun JI ; Xiaoyun YANG ; Zhongxin ZHANG ; Zuokun LU ; Kailin YANG ; Cheng CHEN ; Qi ZHAO ; Heng CHI ; Zhongyu MU ; Wei XIE ; Zefang WANG ; Huiqiang LOU ; Haitao YANG ; Zihe RAO
Protein & Cell 2016;7(8):562-570
The recent explosive outbreak of Zika virus (ZIKV) infection has been reported in South and Central America and the Caribbean. Neonatal microcephaly associated with ZIKV infection has already caused a public health emergency of international concern. No specific vaccines or drugs are currently available to treat ZIKV infection. The ZIKV helicase, which plays a pivotal role in viral RNA replication, is an attractive target for therapy. We determined the crystal structures of ZIKV helicase-ATP-Mn(2+) and ZIKV helicase-RNA. This is the first structure of any flavivirus helicase bound to ATP. Comparisons with related flavivirus helicases have shown that although the critical P-loop in the active site has variable conformations among different species, it adopts an identical mode to recognize ATP/Mn(2+). The structure of ZIKV helicase-RNA has revealed that upon RNA binding, rotations of the motor domains can cause significant conformational changes. Strikingly, although ZIKV and dengue virus (DENV) apo-helicases share conserved residues for RNA binding, their different manners of motor domain rotations result in distinct individual modes for RNA recognition. It suggests that flavivirus helicases could have evolved a conserved engine to convert chemical energy from nucleoside triphosphate to mechanical energy for RNA unwinding, but different motor domain rotations result in variable RNA recognition modes to adapt to individual viral replication.
Crystallography, X-Ray
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Protein Domains
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RNA Helicases
;
chemistry
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RNA, Viral
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chemistry
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Viral Proteins
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chemistry
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Zika Virus
;
enzymology


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